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研究领域

高分子合成化学,光电功能高分子;高分子液晶;超分子化学

近期论文

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(1) Zong-Quan Wu, Robert J. Ono, Zheng Chen, Zicheng Li and Christopher W. Bielawski,* Polythiophene-b-Poly(g-Benzyl L-Glutamate): Synthesis and Study of a New Class of Rod–Rod Block Copolymers. Polym. Chem. 2011, 2, 300–302. (Hot Article). (2) Lei Wu,* Jie Ling, Zong-Quan Wu, A Highly Active and Recyclable Catalyst: Phosphine Dendrimer-Stabilized Nickel Nanoparticles for the Suzuki Coupling Reaction. Adv. Synth. & Cat. 2011, 9, 1452–1456. (3) Zong-Quan Wu, Robert J. Ono, Zheng Chen and Christopher W. Bielawski,* Synthesis of Poly(3-alkylthiophene)–block–Poly(arylisocyanide): Two Mechanistically Distinct, Sequential Living Polymerizations Using a Single Catalyst. J. Am. Chem. Soc., 2010, 132, 14000–14001. (Hights of DOE, USA). (4) Zong-Quan Wu, Yoshio Furusho,* Hidekazu Yamada, and Eiji Yashima,* A hetero-stranded double helix composed of m-diethynylbenzene-based complementary molecular strands stabilized by amidinium-carboxylate salt bridges. Chem. Commun., 2010, 46, 8962–8964. (5) Zong-Quan Wu, Kanji Nagai, Motonori Banno, Kento Okoshi, Kiyotaka Onitsuka, and Eiji Yashima,* Enantiomer-Selective and Helix-Sense-Selective Block Copolymerization of Isocyanide Enantiomers Initiated by Single-Handed Helical Poly(phenyl isocyanide)s. J. Am. Chem. Soc., 2009, 131, 6708–6718. (6) Zong-Quan Wu, Xue-Bin Shao, Chuang Li, Jun-Li Hou, Kui Wang, Xi-Kui Jiang, and Zhan-Ting Li,* Hydrogen Bonding-Driven Preorganized Zinc Porphyrin Receptors for Efficient Complexation of C60, C70 and C60 Derivatives. J. Am. Chem. Soc., 2005, 127, 17460–17468. (7) Zong-Quan Wu, Chang-Zhi Li, Xi-Kui Jiang, and Zhan-Ting Li,* Hydrogen Bonding-Driven Pyridine and Imidazole- Incorporated C60 Foldamers Receptors For Efficient Complexation of Zinc Porphyrins. Tetrahedron 2006, 62, 11054–11062. (8) Zong-Quan Wu, Xi-Kui Jiang, Shi-Zheng Zhu, and Zhan-Ting Li,* Hydrogen Bond-Induced Rigid Oligoanthranilamide Ribbons That Are Planar and Straight, Org. Lett. 2004, 6, 229–232. (9) Zong-Quan Wu, Xi-Kui Jiang, and Zhan-Ting Li,* Hydrogen Bonding-Mediated Self-Assembly of Square and Triangular Metallocyclophanes. Tetrahedron Lett., 2005, 46, 8067–8070. (101) Lei Wu,* Jie Ling, Zong-Quan Wu,A Highly Active and Recyclable Catalyst: Phosphine Dendrimer Stabilized Nickel Nanoparticles for the Suzuki Coupling Reaction, Adv. Syn. Catal., 2011, 9, 1452–1456. (11) Zheng Chen, Daniel R. Dreyer, Zong-Quan Wu, Kelly M. Wiggins, Christopher W. Bielawski,* and Zhenhua Jiang, Synthesis and Characterization of Main Chain Poly(carbazole)s Prepared via CuAAC. J. Polym. Soc., Polym. Chem., 2011, 49, 1421–1426. (12) Jun-Li Hou, Hui-Ping Yi, Xue-Bin Shao, Chuang Li, Zong-Quan Wu, Xi-Kui Jiang, Li-Zhu Wu, Chen-Ho Tung, and Zhan-Ting Li,* Helicity Induction in Hydrogen Bonding-Driven Zinc Porphyrin Foldamers by Chiral C60-Incorporated Histidines. Angew. Chem. Int. Ed., 2006, 45, 796–800. (13) Zicheng Li, Robert J. Ono, Zong-Quan Wu and Christopher W. Bielawski,* Synthesis and Self-Assembly of Poly(3-Hexylthiophene)-Block-Poly(Acrylic Acid) Copolymers. Chem. Commun., 2011, 47, 197–199. (Hot Paper) (14) Motonori Banno, Zong-Quan Wu, Kanji Nagai, Shin-ichiro Sakurai, Kento Okoshi, and Eiji Yashima,* Two-Dimensional Bilayer Smectic Ordering of Rigid Rod?Rod Helical Diblock Polyisocyanides. Macromolecules 2010, 43, 6553–6561. (15) Jing Wu, Fang Fang, Wen-Ya Lu, Jun-Li Hou, Chuang Li, Zong-Quan Wu, Xi-Kui Jiang, Zhan-Ting Li,* and Yi-Hua Yu, Dynamic [2]Catenanes Based on a Hydrogen Bonding-Mediated Bis-Zinc Porphyrin Foldamer Tweezer: A Case Study. J. Org. Chem., 2007, 72, 2897–2905. (16) Chang-Zhi Li, Jiang Zhu, Zong-Quan Wu, Jun-Li Hou, Chuang Li, Xue-Bin Shao, Xi-Kui Jiang, Zhan-Ting Li,* Xiang Gao, and Quan-Rui Wang,* “Two-point”-bound supramolecular complexes from semi-rigidified dipyridine receptors and zinc porphyrins. Tetrahedron, 2006, 62, 6973–6980. (17) T. Adachi, J. Brazard, R. J. Ono, B. Hanson, M. C. Traub, Z.-Q. Wu, Z. Li, J. C. Bolinger, V. Ganesan, C. W. Bielawski, D. A. V. Bout, and P. F. Barbara, Regioregularity and Single Polythiophene Chain Conformation, J. Phys. Chem. Lett., 2011, 2 (12), 1400–1404.

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